Flexible-Interval High-Sensitivity Troponin Velocity for the Detection of Acute Coronary Syndromes.
暂无分享,去创建一个
A. Einstein | A. Kratz | L. Rabbani | A. Tichter | M. Probst | A. Amaranto | B. Chang | E. Suh | Lauren S. Ranard | Phong Anh Huynh | Dana L Sacco | R. J. Lee
[1] A. Einstein,et al. Impact of a rapid high‐sensitivity troponin pathway on patient flow in an urban emergency department , 2022, Journal of the American College of Emergency Physicians open.
[2] D. Atar,et al. Performance of the European Society of Cardiology 0/1-Hour, 0/2-Hour, and 0/3-Hour Algorithms for Rapid Triage of Acute Myocardial Infarction , 2021, Annals of Internal Medicine.
[3] Deepak L. Bhatt,et al. 2021 AHA/ACC/ASE/CHEST/SAEM/SCCT/SCMR Guideline for the Evaluation and Diagnosis of Chest Pain: Executive Summary: A Report of the American College of Cardiology/American Heart Association Joint Committee on Clinical Practice Guidelines. , 2021, Circulation.
[4] N. Mills,et al. Implementing an early rule-out pathway for acute myocardial infarction in clinical practice , 2021, Heart.
[5] U. Ekelund,et al. Diagnostic accuracy of the HEART Pathway and EDACS-ADP when combined with a 0-hour/1-hour hs-cTnT protocol for assessment of acute chest pain patients , 2021, Emergency Medicine Journal.
[6] D. Tancredi,et al. Impact of high-sensitivity cardiac troponin implementation on emergency department length of stay, testing, admissions, and diagnoses. , 2021, The American journal of emergency medicine.
[7] R. Body,et al. The Diagnostic Accuracy of the Emergency Department Assessment of Chest Pain (EDACS) Score: A Systematic Review and Meta-analysis. , 2021, Annals of emergency medicine.
[8] A. Jaffe,et al. The IFCC Clinical Application of Cardiac Biomarkers Committee's Appraisal of the 2020 ESC Guidelines for the Management of Acute Coronary Syndromes in Patients Presenting Without Persistent ST-segment Elevation: Getting Cardiac Troponin Right. , 2020, Clinical chemistry.
[9] Deepak L. Bhatt,et al. 2020 ESC Guidelines for the management of acute coronary syndromes in patients presenting without persistent ST-segment elevation. , 2020, European heart journal.
[10] O. Miró,et al. Cinética temprana de troponina en pacientes con sospecha de infarto agudo de miocardio , 2020 .
[11] G. Innes,et al. Prospective comparative evaluation of the European Society of Cardiology (ESC) 1-hour and a 2-hour rapid diagnostic algorithm for myocardial infarction using high-sensitivity troponin-T. , 2020, CJEM.
[12] L. Daniels,et al. Highly Sensitive Cardiac Troponins: The Evidence Behind Sex‐Specific Cutoffs , 2020, Journal of the American Heart Association.
[13] J. Karnon,et al. A Randomized Trial of a 1-Hour Troponin T Protocol in Suspected Acute Coronary Syndromes: The Rapid Assessment of Possible ACS In the Emergency Department with High Sensitivity Troponin T (RAPID-TnT) Study. , 2019, Circulation.
[14] C. Snozek,et al. Evaluating Tiered Hemolysis Thresholds to Facilitate Rapid Reporting of High-Sensitivity Cardiac Troponin. , 2019, The journal of applied laboratory medicine.
[15] A. Peters,et al. Application of High-Sensitivity Troponin in Suspected Myocardial Infarction. , 2019, The New England journal of medicine.
[16] M. Weinstock,et al. Time to Move On: Redefining Chest Pain Outcomes , 2019, Journal of the American Heart Association.
[17] A. von Eckardstein,et al. Comparison of fourteen rule-out strategies for acute myocardial infarction. , 2019, International journal of cardiology.
[18] F. Apple,et al. Trial design for assessing analytical and clinical performance of high-sensitivity cardiac troponin I assays in the United States: The HIGH-US study , 2019, Contemporary clinical trials communications.
[19] B. Wells,et al. Safely Identifying Emergency Department Patients With Acute Chest Pain for Early Discharge: HEART Pathway Accelerated Diagnostic Protocol , 2018, Circulation.
[20] D. Nestler,et al. Clinical Policy: Critical Issues in the Evaluation and Management of Emergency Department Patients With Suspected Non–ST‐Elevation Acute Coronary Syndromes , 2018, Annals of emergency medicine.
[21] G. Burke,et al. Use of the HEART Pathway with high sensitivity cardiac troponins: A secondary analysis. , 2017, Clinical biochemistry.
[22] J. Greenslade,et al. Assessment of the European Society of Cardiology 0-Hour/1-Hour Algorithm to Rule-Out and Rule-In Acute Myocardial Infarction , 2016, Circulation.
[23] D. Chew,et al. The predictive value of high sensitivity-troponin velocity within the first 6h of presentation for cardiac outcomes regardless of acute coronary syndrome diagnosis. , 2016, International journal of cardiology.
[24] C. Reid,et al. Accelerated diagnostic protocol using high-sensitivity cardiac troponin T in acute chest pain patients. , 2015, International journal of cardiology.
[25] Jeroen J. Bax,et al. Third universal definition of myocardial infarction. , 2012, Global heart.
[26] N. Peschanski,et al. Evaluation of haemolysis in emergency department samples requesting high sensitivity troponin T measurement , 2012, Annals of clinical biochemistry.
[27] Jeroen J. Bax,et al. 2015 ESC Guidelines for the management of acute coronary syndromes in patients presenting without persistent ST-segment elevation: Task Force for the Management of Acute Coronary Syndromes in Patients Presenting without Persistent ST-Segment Elevation of the European Society of Cardiology (ESC). , 2011, European heart journal.
[28] N. Buderer,et al. Statistical methodology: I. Incorporating the prevalence of disease into the sample size calculation for sensitivity and specificity. , 1996, Academic emergency medicine : official journal of the Society for Academic Emergency Medicine.